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Ultimate strength formulation considering failure mode interactions of ring-stiffened cylinders subjected to hydrostatic pressure

机译:考虑静水压力的环加劲缸失效模式相互作用的极限强度公式

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This paper outlines empirical formulas to provide adequate predictions of the ultimate strength of ring-stiffened cylinders under hydrostatic pressure. The ultimate strength formulation was derived from published test data found in the open literature. The formulas consider the failure mode interactions, which include the parameter of shell yielding, inter-frame buckling, overall buckling, and stiffener tripping. The failure modes were inserted in the quadratic Merchant-Rankine formula. Afterward, the knockdown factors were empirically derived to best fit the actual collapse pressure. It is found that the proposed formulation can predict the ultimate strengths of ring stiffened cylinders more accurately and consistently than other codified rules (PD5500, GL, ABS, API). The simple criterion for the assessment of failure modes was also provided. Furthermore, parametric studies were conducted to observe the effect of the design parameter on sizing the ring-stiffened cylinder when the failure modes can be predicted.
机译:本文概述了经验公式,以便对静水压力下的环形加劲缸的极限强度提供足够的预测。极限强度公式来自公开文献中公开的测试数据。这些公式考虑了破坏模式的相互作用,其中包括壳屈服,框架间屈曲,整体屈曲和加劲肋跳闸的参数。将故障模式插入二次Merchant-Rankine公式中。然后,根据经验推导击倒因子,以最适合实际的崩溃压力。结果发现,与其他法规(PD5500,GL,ABS,API)相比,所提出的公式可以更准确,更一致地预测环形加劲圆柱的极限强度。还提供了评估失效模式的简单准则。此外,进行了参数研究,以观察可预测失效模式时设计参数对环加劲缸尺寸的影响。

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